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An enhanced concept of rheological models to represent nonlinear thermoviscoplasticity and its energy storage behavior

机译:代表非线性热粘塑性及其能量存储行为的流变模型的增强概念

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摘要

An enhanced rheological network is presented for the material modeling of thermoviscoplasticity. By introducing new basic elements, nonlinear isotropic and kinematic hardening may be depicted as well as an improved description of energy storage and dissipation during plastic deformations. Satisfying the thermome-chanical consistency, the yield function and the flow rule are directly deduced from the stress equilibrium and the kinematics of the rheological network by means of simple algebraic calculations. Novel approaches are proposed to account for a process-dependent energy storage also for the case of ideal plasticity. The resulting energy storage behavior is investigated and validated by means of the simulation of tension test data.
机译:提出了一种增强的流变网络,用于热粘塑性的材料建模。通过引入新的基本元素,可以描述非线性各向同性和运动学硬化,以及对塑性变形过程中能量存储和耗散的改进描述。通过简单的代数计算,可从应力平衡和流变网络的运动学中直接得出满足热力学一致性的屈服函数和流动规律。提出了新颖的方法来考虑与过程相关的能量存储,以及理想塑性的情况。通过模拟张力测试数据来研究和验证由此产生的储能性能。

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